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STUDY ON NO_x EMISSION OF MEDIUM SPEED MICRO PILOT GAS ENGINE WITH PRE-COMBUSTION CHAMBER

机译:具有预燃烧室中型微试燃气发动机NO_X发射的研究

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Over the past decade, improved performance has given advanced gas engines a special role in numerous applications. High-density gas engines with BMEP values exceeding 2MPa and power generation efficiency exceeding 45% are now widely available. The performance parameters of advanced lean burn gas engines such as thermal efficiency and BMEP now nearly equal those of diesel engines. Despite higher thermal efficiency, these designs have successfully maintained low emissions, particularly NO_x emissions. Nevertheless, problems associated with knocking, misfires, and spark plug service life have grown more serious with increasing BEMP. Micro pilot engines offer the advantage of fast and stable combustion over conventional spark ignition systems and represent a technical solution for such problems. They also provide long maintenance intervals. Niigata Power Systems has already introduced the 22AG series and 28AG micro pilot gas engines to the Japanese market. The five models in the 22AG series (namely 6,8L and 12,16,18V) cover the power range from 1 to 3MW. The output of the 18V28AG is 6MW. The first delivered 8L22AG has operated daily and continuously from 2002, with no serious issues encountered to date over a total time of operation of roughly 60,000 hours, with minimum engine stops for scheduled maintenance every 4,000 hours. Environmental issues, cost effectiveness, energy conservation, and the ability to use waste alternative fuels are major concerns worldwide. Micro pilot gas engines can contribute in these areas by using refuse and synthesis gas - very low heat energy sources - as fuel. Synthesis gas contains hydrogen and carbon monoxide as combustible components. Micro pilot engines offer major potential advantages, making an examination of their NO_x emission characteristics worthwhile. This paper discusses issues related to the NO_x emissions of micro pilot gas engines.
机译:在过去十年中,改进的性能在众多应用中具有高级燃气发动机的特殊作用。现在广泛可用,具有超过25%的BMEP值的高密度气体发动机和超过45%的发电效率。高级瘦燃烧燃气发动机的性能参数如热效率和BMEP现在几乎等于柴油发动机。尽管热效率较高,但这些设计已成功维持低排放,特别是No_X排放。然而,随着BEMP的增加,与敲击,失火和火花塞服务生活有关的问题已经变得更加严重。微型飞行员发动机提供了在传统的火花点火系统上快速稳定的燃烧的优势,并代表了这种问题的技术解决方案。它们还提供长期维护间隔。 Niigata Power Systems已经推出了22AG系列和28AG微型飞行员发动机到日本市场。 22AG系列中的五种型号(即6,8L和12,18V)覆盖功率范围从1到3MW。 18V28AG的输出为6MW。第一次交付的8L22AG每天从2002年运营,迄今为止遇到严重问题,在大约60,000小时的总操作时间内遇到严重问题,最低发动机每4,000小时停止预定维护。环境问题,成本效益,节能和使用废物替代燃料的能力是全球主要问题。通过使用垃圾和合成气 - 非常低的热能来源 - 作为燃料,微型飞行器发动机可以在这些区域贡献。合成气含有氢气和一氧化碳作为可燃组分。微型飞行员发动机具有重大潜在的优势,对其NO_X排放特性进行了价值。本文讨论了与微型飞行器发动机的NO_X排放有关的问题。

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